Cong Guangtao, Wang Wanwan, Lai Nien-Chu, Liang Zhuojian, Lu Yi-Chun
Electrochemical Energy and Interfaces Laboratory, Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Shatin, China.
Nat Mater. 2019 Apr;18(4):390-396. doi: 10.1038/s41563-019-0286-7. Epub 2019 Feb 11.
Alkali metal-oxygen batteries promise high gravimetric energy densities but suffer from low rate capability, poor cycle life and safety hazards associated with metal anodes. Here we describe a safe, high-rate and long-life oxygen battery that exploits a potassium biphenyl complex anode and a dimethylsulfoxide-mediated potassium superoxide cathode. The proposed potassium biphenyl complex-oxygen battery exhibits an unprecedented cycle life (3,000 cycles) with a superior average coulombic efficiency of more than 99.84% at a high current density of 4.0 mA cm. We further reduce the redox potential of biphenyl by adding the electron-donating methyl group to the benzene ring, which successfully achieved a redox potential of 0.14 V versus K/K. This demonstrates the direction and opportunities to further improve the cell voltage and energy density of the alkali-metal organic-oxygen batteries.
碱金属-氧电池有望实现高重量能量密度,但存在倍率性能低、循环寿命短以及与金属阳极相关的安全隐患等问题。在此,我们描述了一种安全、高倍率且长寿命的氧电池,该电池采用联苯钾络合物阳极和二甲基亚砜介导的超氧化钾阴极。所提出的联苯钾络合物-氧电池展现出前所未有的循环寿命(3000次循环),在4.0 mA cm的高电流密度下,平均库仑效率超过99.84%。我们通过向苯环添加供电子甲基进一步降低了联苯的氧化还原电位,成功实现了相对于K/K为0.14 V的氧化还原电位。这展示了进一步提高碱金属有机-氧电池的电池电压和能量密度的方向与机遇。